Light Confinement with Structured Beams in Gold Nanoparticle Suspensions

Author:

Balbuena Ortega Argelia BalbuenaORCID,Torres-González Felix E.,López Gayou Valentin López,Delgado Macuil Raul Delgado,Assanto GaetanoORCID,Volke-Sepulveda KarenORCID

Abstract

We carry out an experimental campaign to investigate the nonlinear self-defocusing propagation of singular light beams with various complex structures of phase and intensity in a colloidal suspension of gold nanoparticles with a plasmonic resonance near the laser wavelength (532nm). Studying optical vortices embedded in Gaussian beams, Bessel vortices and Bessel-cosine (necklace) beams, we gather evidence that while intense vortices turn into two-dimensional dark solitons, all structured wavepackets are able to guide a weak Gaussian probe of different wavelength (632.8 nm) along the dark core. The probe confinement also depends on the topological charge of the singular pump.

Funder

DGAPA-UNAM

Publisher

MDPI AG

Subject

Radiology, Nuclear Medicine and imaging,Instrumentation,Atomic and Molecular Physics, and Optics

Reference63 articles.

1. Nanotechnology: Basic Science and Emerging Technologies;Wilson,2002

2. Nanotechnology research directions for societal needs in 2020: summary of international study

3. Nanomedicine, nanotechnology in medicine

4. Nanotechnology: Understanding Small Systems;Rogers,2014

5. Plasmonic Resonant Solitons in Metallic Nanosuspensions

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